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Subretinal macrophages in the developing eye of eutherian mammals and marsupials
1Department of Anatomy and Human Biology, The University of Western Australia, Nedlands (Perth), WA 6907, Australia. mcmenamin@anhb.uwa.edu.au
Abstract:
Blood-borne mononuclear cells invade the developing retina via the hyaloid vasculature at the optic nerve head. Following removal of apoptotic cell debris they give rise to the network of resident microglia. The population of cells recently described in the peripheral subretinal space of developing human eyes may represent a further population of macrophages destined to become microglia. The aim of the present study was to confirm the presence of subretinal macrophages in the developing eye in other mammalian species and perform preliminary immunophenotypic analysis in rat tissues. The range of species chosen included eutherian mammals (rat and rabbit) and marsupials (wallaby and opossum). Ocular tissues from a range of developmental stages were studied by scanning electron microscopy and transmission electron microscopy. Distinctive networks of dendriform and pleomorphic macrophages were observed by scanning electron microscopy in the peripheral subretinal space of D2 rabbits, newborn and D2 rats and D75 wallaby. Transmission electron microscopic studies of D2 rabbit, newborn and D2 rat and all ages of North American opossum revealed cells with the ultrastructural features of macrophages in the peripheral subretinal space, cilio-retinal junction and between ciliary epithelial cells. Preliminary immunoperoxidase studies using a panel of anti-leukocyte monoclonal antibodies on frozen sections of rat ocular tissues (newborn, D2 and D4) revealed ED1(+) Ox42(+) ED2(+) but Ox6(-) cells in the peripheral subretinal space, peripheral retina and ciliary body epithelia. The data confirms that subretinal macrophages are a feature of the developing eye in a broad range of mammalian species and immunophenotypic evidence leads the author to postulate that these cells arise from the ciliary body vasculature and may migrate into peripheral neural retina and mature into resident microglia.
Insights
Subretinal macrophages are present in developing mammalian eyes across diverse species. These cells, originating from ciliary vasculature, likely mature into resident microglia, contributing to retinal development.
Area of Science:
- Ophthalmology
- Developmental Biology
- Immunology
Background:
- Blood-borne mononuclear cells are known to invade the developing retina and differentiate into resident microglia.
- A population of cells in the peripheral subretinal space of human eyes may represent macrophages destined to become microglia.
Purpose of the Study:
- To confirm the presence of subretinal macrophages in the developing eyes of various mammalian species.
- To conduct preliminary immunophenotypic analysis of these cells in rat tissues.
Main Methods:
- Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were used on ocular tissues from different developmental stages.
- Immunoperoxidase studies with anti-leukocyte monoclonal antibodies were performed on rat ocular tissues.
Main Results:
- Distinct networks of macrophages were observed in the peripheral subretinal space of rabbits, rats, and wallabies using SEM.
- TEM confirmed cells with macrophage ultrastructure in the subretinal space and ciliary regions across species.
- Immunophenotyping in rats revealed ED1(+) Ox42(+) ED2(+) but Ox6(-) cells in the subretinal space, retina, and ciliary body.
Conclusions:
- Subretinal macrophages are a conserved feature of developing mammalian eyes.
- Evidence suggests these macrophages originate from the ciliary body vasculature.
- These cells may migrate into the retina and mature into resident microglia.